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超临界二氧化碳对肺基质的灭菌作用

Sterilization of Lung Matrices by Supercritical Carbon Dioxide.

作者信息

Balestrini Jenna L, Liu Angela, Gard Ashley L, Huie Janet, Blatt Kelly M S, Schwan Jonas, Zhao Liping, Broekelmann Tom J, Mecham Robert P, Wilcox Elise C, Niklason Laura E

机构信息

1 Department of Biomedical Engineering, Yale University School of Medicine , New Haven, Connecticut.

2 Department of Anesthesiology, Yale University School of Medicine , New Haven, Connecticut.

出版信息

Tissue Eng Part C Methods. 2016 Mar;22(3):260-9. doi: 10.1089/ten.TEC.2015.0449. Epub 2016 Jan 29.

Abstract

Lung engineering is a potential alternative to transplantation for patients with end-stage pulmonary failure. Two challenges critical to the successful development of an engineered lung developed from a decellularized scaffold include (i) the suppression of resident infectious bioburden in the lung matrix, and (ii) the ability to sterilize decellularized tissues while preserving the essential biological and mechanical features intact. To date, the majority of lungs are sterilized using high concentrations of peracetic acid (PAA) resulting in extracellular matrix (ECM) depletion. These mechanically altered tissues have little to no storage potential. In this study, we report a sterilizing technique using supercritical carbon dioxide (ScCO2) that can achieve a sterility assurance level 10(-6) in decellularized lung matrix. The effects of ScCO2 treatment on the histological, mechanical, and biochemical properties of the sterile decellularized lung were evaluated and compared with those of freshly decellularized lung matrix and with PAA-treated acellular lung. Exposure of the decellularized tissue to ScCO2 did not significantly alter tissue architecture, ECM content or organization (glycosaminoglycans, elastin, collagen, and laminin), observations of cell engraftment, or mechanical integrity of the tissue. Furthermore, these attributes of lung matrix did not change after 6 months in sterile buffer following sterilization with ScCO2, indicating that ScCO2 produces a matrix that is stable during storage. The current study's results indicate that ScCO2 can be used to sterilize acellular lung tissue while simultaneously preserving key biological components required for the function of the scaffold for regenerative medicine purposes.

摘要

肺工程是终末期肺衰竭患者移植的一种潜在替代方案。从去细胞支架构建工程肺成功开发的两个关键挑战包括:(i)抑制肺基质中残留的传染性生物负荷,以及(ii)在保持基本生物学和机械特性完整的同时对去细胞组织进行消毒的能力。迄今为止,大多数肺是使用高浓度过氧乙酸(PAA)进行消毒的,这会导致细胞外基质(ECM)耗竭。这些机械性能改变的组织几乎没有储存潜力。在本研究中,我们报告了一种使用超临界二氧化碳(ScCO2)的消毒技术,该技术可在去细胞肺基质中实现无菌保证水平10^(-6)。评估了ScCO2处理对无菌去细胞肺的组织学、机械和生化特性的影响,并与新鲜去细胞肺基质和PAA处理的无细胞肺进行了比较。将去细胞组织暴露于ScCO2不会显著改变组织结构、ECM含量或组织(糖胺聚糖、弹性蛋白、胶原蛋白和层粘连蛋白)、细胞植入观察或组织的机械完整性。此外,在用ScCO2消毒后,肺基质的这些特性在无菌缓冲液中放置6个月后没有改变,这表明ScCO2产生的基质在储存期间是稳定的。当前研究结果表明,ScCO2可用于对无细胞肺组织进行消毒,同时保留再生医学支架功能所需的关键生物成分。

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